9006-30-33900 Patient Monitor SpO2 Board Mindray PM7000
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9006-30-33900 Mindray PM7000 Patient Monitor SpO2 Board
Principles of Operation Mindray Spo2 module
SpO2 monitoring is a non-invasive technique to measure oxyhemoglobin levels and pulse rate by measuring light absorbance of a selected wavelength. The light generated by the sensor penetrates the tissue and is converted into an electrical signal by the sensor's light detectors. The SpO2 module processes the electrical signal and displays the SpO2 and pulse waveform and digital values on the screen. The sensor measures at a nominal wavelength of 660 nm with red LEDs and 940 nm with infrared LEDs. The maximum optical power of the LED light is 4 mW
Warning
simultaneously. Obstruction of blood flow during NIBP measurements can adversely affect SpO2 readings.
Principles of Operation Masi-mo Spo2 module
The pulse oximeter measurement module (Masi-mo Set, MS-7) is based on three basic principles:
The MS-7 uses a similar operating principle to conventional SpO2 modules. Calculates SpO2 values by applying red and infrared light to the capillary bed and measuring the change in light absorption during the pulsation cycle. The red and infrared light-emitting diodes (LEDs) of the SpO2 sensor act as light sources and the photodiodes act as photodetectors.
Principles of Nellcor Spo2 Operation
Bones, tissues, pigmentation and veins usually absorb a certain amount of light over time. The arteriolar bed normally pulsates and absorbs varying amounts of light during the beat. The Nellcor SpO2 module uses a pulse oximeter to measure functional oxygen saturation in the blood. Pulse oximeters work by attaching a probe to a small, pulsating arterial vessel, such as a finger or toe. The sensor contains a double light source and a photodetector. The percentage of light absorbed is converted into functional oxygen saturation (SpO2).
Overview of oxygen saturation Pulse oximeters are based on two principles: 1. Oxygenated and deoxygenated hemoglobin absorb red and infrared light differently (ie, spectrophotometrically). 2. The volume of arterial blood in the tissue (and therefore the absorption of light by the blood) changes during the pulse (i.e. plethysmography).
SpO2 Specifications
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